McKinney David A, Eum Jai-Hoon, Dhara Animesh, Strand Michael R, Brown Mark R
Department of Entomology, University of Georgia, Athens, GA 30602, USA.
Department of Entomology, University of Georgia, Athens, GA 30602, USA.
Insect Biochem Mol Biol. 2016 Mar;70:160-9. doi: 10.1016/j.ibmb.2016.01.001. Epub 2016 Jan 7.
A critical step in mosquito reproduction is the ingestion of a blood meal from a vertebrate host. In mosquitoes like Aedes aegypti, blood feeding stimulates the release of ovary ecdysteroidogenic hormone (OEH) and insulin-like peptide 3 (ILP3). This induces the ovaries to produce ecdysteroid hormone (ECD), which then drives egg maturation. In many immature insects, prothoracicotropic hormone (PTTH) stimulates the prothoracic glands to produce ECD that directs molting and metamorphosis. The receptors for OEH, ILP3 and PTTH are different receptor tyrosine kinases with OEH and ILP3 signaling converging downstream in the insulin pathway and PTTH activating the mitogen-activated protein kinase pathway. Calcium (Ca(2+)) flux and cAMP have also been implicated in PTTH signaling, but the role of Ca(2+) in OEH, ILP3, and cAMP signaling in ovaries is unknown. Here, we assessed whether Ca(2+) flux affects OEH, ILP3, and cAMP activity in A. aegypti ovaries and also asked whether PTTH stimulated ovaries to produce ECD. Results indicated that Ca(2+) flux enhanced but was not essential for OEH or ILP3 activity, whereas cAMP signaling was dependent on Ca(2+) flux. Recombinant PTTH from Bombyx mori fully activated ECD production by B. mori PTGs, but exhibited no activity toward A. aegypti ovaries. Recombinant PTTH from A. aegypti also failed to stimulate either B. mori PTGs or A. aegypti ovaries to produce ECD. We discuss the implications of these results in the context of mosquito reproduction and ECD biosynthesis by insects generally.
蚊子繁殖过程中的一个关键步骤是从脊椎动物宿主摄取血液。在埃及伊蚊等蚊子中,吸食血液会刺激卵巢蜕皮甾类生成激素(OEH)和胰岛素样肽3(ILP3)的释放。这会诱导卵巢产生蜕皮甾类激素(ECD),进而推动卵子成熟。在许多未成熟昆虫中,促前胸腺激素(PTTH)刺激前胸腺产生ECD,从而指导蜕皮和变态。OEH、ILP3和PTTH的受体是不同的受体酪氨酸激酶,OEH和ILP3信号在胰岛素途径的下游汇聚,而PTTH激活丝裂原活化蛋白激酶途径。钙(Ca(2+))通量和cAMP也与PTTH信号传导有关,但Ca(2+)在卵巢中OEH、ILP3和cAMP信号传导中的作用尚不清楚。在这里,我们评估了Ca(2+)通量是否会影响埃及伊蚊卵巢中的OEH、ILP3和cAMP活性,还研究了PTTH是否会刺激卵巢产生ECD。结果表明,Ca(2+)通量增强了OEH或ILP3的活性,但并非必不可少,而cAMP信号传导依赖于Ca(2+)通量。家蚕的重组PTTH可完全激活家蚕前胸腺产生ECD,但对埃及伊蚊卵巢没有活性。埃及伊蚊的重组PTTH也未能刺激家蚕前胸腺或埃及伊蚊卵巢产生ECD。我们在蚊子繁殖以及昆虫一般的ECD生物合成背景下讨论了这些结果的意义。